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Radial fan simulations by computational fluid dynamics and experimental validation

机译:通过计算流体动力学和实验验证进行径向风扇模拟

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Fans are commonly used to refrigerate electrical machines when air forced cooling is required. They are rather simple solutions that can considerably improve the thermal performance of electrical machines, so the fan analysis could become an important point during the thermal design of electrical machines. This paper presents an analysis by computational fluid dynamics (CFD) simulations with the goal of characterizing radial fans, used in electrical machines. Different boundary conditions and parameters that affect to CFD results are evaluated in order to get an efficient way to simulate radial fans. The main objective is to obtain the flow-pressure characteristic curve of fans and airflow velocities by CFD simulations. Finally CFD simulation results of 2 fans are experimentally validated. One of them has been analysed in a fan testing wind tunnel. And the second one has been analysed in an auto-ventilated machine.
机译:当需要强制冷却时,风扇通常用于制冷电机。它们是相当简单的解决方案,可以显着改善电机的热性能,因此风扇分析可能成为电机热设计期间的重要方面。本文介绍了通过计算流体动力学(CFD)模拟进行的分析,目的是表征用于电机的径向风扇。评估了影响CFD结果的不同边界条件和参数,以便获得模拟径向风扇的有效方法。主要目的是通过CFD仿真获得风扇的流动压力特性曲线和气流速度。最后,通过实验验证了2个风扇的CFD仿真结果。其中之一已在风机测试风洞中进行了分析。第二个已经在自动通风的机器中进行了分析。

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